Neurotransmitter-Mediated Mechanisms of Traumatic Brain Injury: Acetylcholine and Excitatory Amino Acids
Механизмы черепно-мозговой травмы, опосредованные нейромедиаторами: ацетилхолин и возбуждающие аминокислоты
1992-03-01
SCID: 54.1/7b43zjqh
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excitatory amino acid receptorsmuscarinic cholinergic receptorsneurotransmitter-mediated mechanismsrodent modelstraumatic brain injury
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Abstract (AI)
Research into traumatic brain injury (TBI), focusing on changes in energy metabolism, cerebrovascular dysfunction, and brain parenchymal morphology, has not produced complete descriptions of mechanisms mediating the pathophysiology of TBI. New studies indicate that neurochemical alterations mediate important components of brain physiology associated with TBI, and these alterations may be responsive to pharmacologic therapy. We discuss rodent models of TBI, review current experimental evidence of muscarinic cholinergic and excitatory amino acid (EAA) receptor involvement in its pathophysiology, and address issues relevant to the interpretation of these data.
Key Findings
1
Excitatory amino acid receptor mechanisms are implicated in traumatic brain injury pathophysiology in experimental studies.
2
Interpretation of receptor-involvement data requires consideration of methodological and experimental issues in rodent TBI models.
3
Muscarinic cholinergic receptor mechanisms contribute to traumatic brain injury pathophysiology based on evidence from rodent models.
4
Neurochemical alterations are important mediators of brain physiological changes after traumatic brain injury.
5
Neurotransmitter-mediated alterations may provide targets for pharmacologic treatment of traumatic brain injury.
Research Object
Traumatic brain injury (TBI) in rodent models
Research Subject
Neurotransmitter-mediated pathophysiological mechanisms involving muscarinic cholinergic and excitatory amino acid receptors
Publication Details
Publication Date
1992-03-01
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